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Boyce E Griffith

Showing results (11-20 of 65) with videos related to

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Theoretical and Computational Fluid Dynamics|March 9, 2016
Immersed boundary-finite element model of fluid-structure interaction in the aortic rootVittoria Flamini, Abe DeAnda, Boyce E Griffith
The Journal of Thoracic and Cardiovascular Surgery|November 24, 2019
Reply: The stresses of cardiovascular mechanicsKeshava Rajagopal, Boyce E Griffith, Abe DeAnda
The Journal of Thoracic and Cardiovascular Surgery|January 2, 2019
Commentary: The mechanics of acute aortic dissection: Measured calculations and calculated measuresKeshava Rajagopal, Boyce E Griffith, Abe DeAnda
Journal of Computational Physics|December 31, 2025
Improving the robustness of the immersed interface method through regularized velocity reconstructionQi Sun, Ebrahim M Kolahdouz, Boyce E Griffith
Journal of Computational Physics|December 13, 2021
A Hybrid Semi-Lagrangian Cut Cell Method for Advection-Diffusion Problems with Robin Boundary Conditions in Moving DomainsAaron Barrett, Aaron L Fogelson, Boyce E Griffith
Journal of Computational Physics|May 11, 2010
The immersed boundary method for advection-electrodiffusion with implicit timestepping and local mesh refinementPilhwa Lee, Boyce E Griffith, Charles S Peskin
Plos One|March 26, 2026
Generating patient-specific computational models with point cloud data from human atrial electrophysiology studiesJosue Nataren Moran, Laryssa Abdala, Boyce E Griffith
Journal of Medical Devices|June 5, 2014
Simulating the Dynamics of an Aortic Valve Prosthesis in a Pulse Duplicator: Numerical Methods and Initial ExperienceBoyce E Griffith, Vittoria Flamini, Abe DeAnda, et al.
Mathematical Medicine and Biology : a Journal of the IMA|April 17, 2018
Analyzing the effects of instillation volume on intravesical delivery using biphasic solute transport in a deformable geometrySean G Smith, Boyce E Griffith, David A Zaharoff
Bulletin of Mathematical Biology|May 5, 2009
Deriving macroscopic myocardial conductivities by homogenization of microscopic modelsPaul E Hand, Boyce E Griffith, Charles S Peskin
Pageof 7

Showing results (11-20 of 65) with videos related to

Sort By:
Pageof 7
Theoretical and Computational Fluid Dynamics|March 9, 2016
Immersed boundary-finite element model of fluid-structure interaction in the aortic rootVittoria Flamini, Abe DeAnda, Boyce E Griffith
The Journal of Thoracic and Cardiovascular Surgery|November 24, 2019
Reply: The stresses of cardiovascular mechanicsKeshava Rajagopal, Boyce E Griffith, Abe DeAnda
The Journal of Thoracic and Cardiovascular Surgery|January 2, 2019
Commentary: The mechanics of acute aortic dissection: Measured calculations and calculated measuresKeshava Rajagopal, Boyce E Griffith, Abe DeAnda
Journal of Computational Physics|December 31, 2025
Improving the robustness of the immersed interface method through regularized velocity reconstructionQi Sun, Ebrahim M Kolahdouz, Boyce E Griffith
Journal of Computational Physics|December 13, 2021
A Hybrid Semi-Lagrangian Cut Cell Method for Advection-Diffusion Problems with Robin Boundary Conditions in Moving DomainsAaron Barrett, Aaron L Fogelson, Boyce E Griffith
Journal of Computational Physics|May 11, 2010
The immersed boundary method for advection-electrodiffusion with implicit timestepping and local mesh refinementPilhwa Lee, Boyce E Griffith, Charles S Peskin
Plos One|March 26, 2026
Generating patient-specific computational models with point cloud data from human atrial electrophysiology studiesJosue Nataren Moran, Laryssa Abdala, Boyce E Griffith
Journal of Medical Devices|June 5, 2014
Simulating the Dynamics of an Aortic Valve Prosthesis in a Pulse Duplicator: Numerical Methods and Initial ExperienceBoyce E Griffith, Vittoria Flamini, Abe DeAnda, et al.
Mathematical Medicine and Biology : a Journal of the IMA|April 17, 2018
Analyzing the effects of instillation volume on intravesical delivery using biphasic solute transport in a deformable geometrySean G Smith, Boyce E Griffith, David A Zaharoff
Bulletin of Mathematical Biology|May 5, 2009
Deriving macroscopic myocardial conductivities by homogenization of microscopic modelsPaul E Hand, Boyce E Griffith, Charles S Peskin
Pageof 7